Comparative Analysis of Bat Genomes Provides Insight into the Evolution of Flight and Immunity
Author(s) -
Guojie Zhang,
Christopher Cowled,
ZhengLi Shi,
Zhiyong Huang,
Kimberly A. BishopLilly,
Xiaodong Fang,
James W. Wynne,
Zhiqiang Xiong,
Michelle L. Baker,
Wei Zhao,
Mary Tachedjian,
Yabing Zhu,
Peng Zhou,
Xuanting Jiang,
Justin H. J. Ng,
Yang Lan,
Lijun Wu,
Jin Xiao,
Yue Feng,
Yuanxin Chen,
Xiaoqing Sun,
Yong Zhang,
Glenn A. Marsh,
Gary Crameri,
Christopher C. Broder,
Kenneth G. Frey,
LinFa Wang,
Jun Wang
Publication year - 2012
Publication title -
science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 12.556
H-Index - 1186
eISSN - 1095-9203
pISSN - 0036-8075
DOI - 10.1126/science.1230835
Subject(s) - genome , biology , evolutionary biology , gene , immunity , genetics , immune system
Bats are the only mammals capable of sustained flight and are notorious reservoir hosts for some of the world's most highly pathogenic viruses, including Nipah, Hendra, Ebola, and severe acute respiratory syndrome (SARS). To identify genetic changes associated with the development of bat-specific traits, we performed whole-genome sequencing and comparative analyses of two distantly related species, fruit bat Pteropus alecto and insectivorous bat Myotis davidii. We discovered an unexpected concentration of positively selected genes in the DNA damage checkpoint and nuclear factor κB pathways that may be related to the origin of flight, as well as expansion and contraction of important gene families. Comparison of bat genomes with other mammalian species has provided new insights into bat biology and evolution.
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